Back to Search Start Over

Generation of Artificial Blastoids Combining miR-200-Mediated Reprogramming and Mechanical Cues.

Authors :
Pennarossa G
Arcuri S
Gandolfi F
Brevini TAL
Source :
Cells [Cells] 2024 Apr 04; Vol. 13 (7). Date of Electronic Publication: 2024 Apr 04.
Publication Year :
2024

Abstract

In vitro-generated blastocyst-like structures are of great importance since they recapitulate specific features or processes of early embryogenesis, thus avoiding ethical concerns as well as increasing scalability and accessibility compared to the use of natural embryos. Here, we combine cell reprogramming and mechanical stimuli to create 3D spherical aggregates that are phenotypically similar to those of natural embryos. Specifically, dermal fibroblasts are reprogrammed, exploiting the miR-200 family property to induce a high plasticity state in somatic cells. Subsequently, miR-200-reprogrammed cells are either driven towards the trophectoderm (TR) lineage using an ad hoc induction protocol or encapsulated into polytetrafluoroethylene micro-bioreactors to maintain and promote pluripotency, generating inner cell mass (ICM)-like spheroids. The obtained TR-like cells and ICM-like spheroids are then co-cultured in the same micro-bioreactor and, subsequently, transferred to microwells to encourage blastoid formation. Notably, the above protocol was applied to fibroblasts obtained from young as well as aged donors, with results that highlighted miR-200's ability to successfully reprogram young and aged cells with comparable blastoid rates, regardless of the donor's cell age. Overall, the approach here described represents a novel strategy for the creation of artificial blastoids to be used in the field of assisted reproduction technologies for the study of peri- and early post-implantation mechanisms.<br />Competing Interests: The authors declare no conflicts of interest.

Details

Language :
English
ISSN :
2073-4409
Volume :
13
Issue :
7
Database :
MEDLINE
Journal :
Cells
Publication Type :
Academic Journal
Accession number :
38607067
Full Text :
https://doi.org/10.3390/cells13070628